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The evolution of the boundary layer in turbulent Rayleigh-Bénard convection in air

机译:空气中湍流瑞利 - 艺术对流中边界层的演变

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摘要

We report measurements of the near-wall flow field in turbulent Rayleigh-Bénard convection in air (Pr = 0.7) using particle imagevelocimetry. The measurements were performed in a thin, rectangular sample at fixed Rayleigh number Ra = 1.45E10. In particular, we focus on the evolution of the boundary layer that a single convection roll generates along its path at the lower horizontal plate. We identify three specific flow regions along this path: (i) a region of wall-normal impingement of the down flow close to one corner of the sample, (ii) a region where a shear layer with almost constant thickness evolves, and (iii) a region in which this boundary layer grows and eventually detaches from the plate surface at the opposite corner of the sample. Our measurements with a spatial resolution better than 1/500 of the total thickness of the boundary layer show that the typical velocity field as well as its statistics qualitatively varies between the three flow regions. In particular, it could be verified that the shear layer region covering about 75% of the total area of the plate is in transition to turbulence at the Rayleigh number as low as investigated in the present work.
机译:我们报告在空气(PR = 0.7),使用粒子imagevelocimetry湍流瑞利 - 贝纳德对流的近壁流场的测量结果。测量在固定瑞利数Ra = 1.45E10薄的矩形样品在执行。特别是,我们专注于单个对流辊沿其在较低的水平板路径生成边界层的演变。我们确定三个特定流动区域沿着该路径:(i)所述向下流动接近样品的一个角的壁正常冲击,的区域(II)的区域中的剪切层具有几乎恒定的厚度的发展,以及(iii ),其中该边界层生长,并最终的区域从板表面在样品的相对拐角分离。我们的测量结果与比的边界层表明,典型的速度场,以及其统计三个流动区域之间变化定性总厚度的1/500更好的空间分辨率。特别地,它可以被证实覆盖围绕板的总面积的75%在剪切层区域是在该瑞利数作为低过渡到湍流如在本工作研究。

著录项

  • 作者

    R. du Puits; C. Willert;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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